44. г(t) 3 (2t%)/2, t3), for 0 < t<2 %3D

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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a. Determine the initial speed of the basketball.
b. Find the initial velocity v(0) at the moment it is released.
c. Find the position function r(t) of the center of the basketball t seconds af
= (0, 8).
r(0) =
d. Find the distance s(t) between the center of the basketball and the front
after the ball is released. Assume the diameter of the basketball hoop is
e. Determine the closest distance (in inches) between the center of the ba
basketball hoop.
f. Is the assumption that the basketball does not hit the front of the hoop
of a women's basketball is about 9.23 inches. (Hint: The ball hits the fr
distance from the center of the ball to the front of the hoop is less tha
43-46. Arc length Find the arc length of the following curves.
43. r(t) =
2 4v2 43/2, 2t
for 1<t< 3
3
44. r(t) = (2tº/2, t³), for 0 < t < 2
45. Tr(t) = (sin t, t+ cos t, 4t), for 0 <t <
2
46. r(t) = (t, In sec t, In (sec t+ tan t)), for 0 <t< -
4
47. Velocity and trajectory length The acceleration of a wayward firework is
0<t<3. Suppose the initial velocity of the firework is v(0) = i.
a. Find the velocity of the firework, for 0 <t < 3.
b. Find the length of the trajectory of the firework over the interval 0
48-49. Arc length parameterization Find a description of the following curve
48. r(t) = (1+ 4t) i – 3t j, for t > 1
4/2 13/2. 2t ), for t 20
%3D
49. r(t) = ( t',
3
50. Tangents and normals for an ellipse Consider the ellipse r(t)
a. Find the tangent vector r', the unit tangent vector T, and the
the curve.
b. At what points does r' have maximum and minimum values
Transcribed Image Text:a. Determine the initial speed of the basketball. b. Find the initial velocity v(0) at the moment it is released. c. Find the position function r(t) of the center of the basketball t seconds af = (0, 8). r(0) = d. Find the distance s(t) between the center of the basketball and the front after the ball is released. Assume the diameter of the basketball hoop is e. Determine the closest distance (in inches) between the center of the ba basketball hoop. f. Is the assumption that the basketball does not hit the front of the hoop of a women's basketball is about 9.23 inches. (Hint: The ball hits the fr distance from the center of the ball to the front of the hoop is less tha 43-46. Arc length Find the arc length of the following curves. 43. r(t) = 2 4v2 43/2, 2t for 1<t< 3 3 44. r(t) = (2tº/2, t³), for 0 < t < 2 45. Tr(t) = (sin t, t+ cos t, 4t), for 0 <t < 2 46. r(t) = (t, In sec t, In (sec t+ tan t)), for 0 <t< - 4 47. Velocity and trajectory length The acceleration of a wayward firework is 0<t<3. Suppose the initial velocity of the firework is v(0) = i. a. Find the velocity of the firework, for 0 <t < 3. b. Find the length of the trajectory of the firework over the interval 0 48-49. Arc length parameterization Find a description of the following curve 48. r(t) = (1+ 4t) i – 3t j, for t > 1 4/2 13/2. 2t ), for t 20 %3D 49. r(t) = ( t', 3 50. Tangents and normals for an ellipse Consider the ellipse r(t) a. Find the tangent vector r', the unit tangent vector T, and the the curve. b. At what points does r' have maximum and minimum values
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